EP1701461B1 - System and method for performing ranging process in a communication system - Google Patents
System and method for performing ranging process in a communication system Download PDFInfo
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- EP1701461B1 EP1701461B1 EP06004763.6A EP06004763A EP1701461B1 EP 1701461 B1 EP1701461 B1 EP 1701461B1 EP 06004763 A EP06004763 A EP 06004763A EP 1701461 B1 EP1701461 B1 EP 1701461B1
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- Prior art keywords
- rng
- ranging
- allocation
- information
- subscriber station
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W28/00—Network traffic management; Network resource management
- H04W28/16—Central resource management; Negotiation of resources or communication parameters, e.g. negotiating bandwidth or QoS [Quality of Service]
- H04W28/18—Negotiating wireless communication parameters
- H04W28/20—Negotiating bandwidth
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J13/00—Code division multiplex systems
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J3/00—Time-division multiplex systems
- H04J3/02—Details
- H04J3/06—Synchronising arrangements
- H04J3/0635—Clock or time synchronisation in a network
- H04J3/0682—Clock or time synchronisation in a network by delay compensation, e.g. by compensation of propagation delay or variations thereof, by ranging
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J3/00—Time-division multiplex systems
- H04J3/16—Time-division multiplex systems in which the time allocation to individual channels within a transmission cycle is variable, e.g. to accommodate varying complexity of signals, to vary number of channels transmitted
- H04J3/1682—Allocation of channels according to the instantaneous demands of the users, e.g. concentrated multiplexers, statistical multiplexers
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
- H04W72/21—Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/10—Connection setup
- H04W76/11—Allocation or use of connection identifiers
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W56/00—Synchronisation arrangements
Definitions
- the present invention relates generally to a communication system, and in particular, to a system and method for performing a ranging process in a communication system.
- OFDMA Orthogonal Frequency Division Multiple Access
- FIG. 1 is a schematic block diagram illustrating the structure of a general Broadband Wireless Access (BWA) communication system.
- a Subscriber Station (SS) 10 generally has mobility and is connected to a Backbone Network (BN) 30 through a Base Station (BS) 20.
- the SS 10 allows connection between the BS 20 and a subscriber.
- the BS 20 provides control, management, and connectivity for the SS 10.
- the BN 30 is connected to an Authentication and Service Authorization (ASA) server 40 for authentication and service authentication of the SS 10.
- ASA Authentication and Service Authorization
- the SS 10 needs to successfully complete a network entry process with the BS 20 to communicate on the BWA communication system.
- the network entry process is divided into downlink channel synchronization, initial ranging, capabilities negotiation, authentication message exchanges, registration, and Internet Protocol (IP) connectivity stages.
- IP Internet Protocol
- the SS 10 Upon completion of the network entry process, the SS 10 creates one or more service flows to send data to the BS 20.
- the initial ranging in the network entry process will be described with reference to FIG. 2 .
- FIG. 2 is a schematic flow diagram for illustrating the initial ranging in the BWA communication system.
- the SS 10 begins the initial ranging by sending an initial ranging code to the BS 20 in a contention-based manner in step 101. Such code ranging allows adjustment of UpLink (UL) timing and power offset of the SS 10.
- the BS 20 marks in a Ranging Response (RNG_RSP) message code ranging information and a power offset adjustment value transmitted from the SS 10 and broadcasts the RNG_RSP message in step 103.
- RNG_RSP Ranging Response
- the SS 10 checks for the code ranging information and adjusts the power offset. If a status field of the RNG_RSP message indicates 'continue', the SS 10 re-attempts the code ranging in step 105.
- the BS 20 determines that timing and power adjustment are completed through the code ranging attempted by the SS 10, it marks the status field of the RNG_RSP message as 'success' and sends the RNG_RSP message to the SS 10 in step 107.
- the BS 20 allocates a UL bandwidth in which the SS 10 can transmit a Ranging Request (RNG_REQ) message through UL-MAP having a Code Division Multiple Access (CDMA) _Allocation_Information Element (IE).
- CDMA_Allocation_IE includes the code ranging information transmitted from the SS 10 and the amount of UL resource allocated to the SS 10. If the status field of the RNG_RSP message indicates 'success', the SS 10 terminates the code ranging and attempts message ranging.
- the SS 10 transmits the RNG_REQ message in the allocated UL bandwidth in step 111. Once the SS 10 receives the RNG_RSP message from the BS 20 in step 113, the ranging is completed.
- the SS 10 is allocated a basic Connection IDentifier (CID) and a primary CID through the ranging. These CIDs are uniquely allocated to the SS 10 from the BS 20 and are used to identify the SS 10 during an access to the BS 20. Information such as MAC address information of the SS 10 is transmitted through the RNG_REQ message.
- CID basic Connection IDentifier
- the BS 20 responds to the RNG_REQ message with the RNG_RSP message based on such information
- the SS 10 sends an SS Basic Capability Request (SBC_REQ) message through the basic CID included in the RNG_RSP message to perform capabilities negotiation.
- SBC_REQ SS Basic Capability Request
- the RNG_REQ message may include information as a Type/Length/Value (TLV) form. Since information included in a single RNG_REQ message may vary with implementation or situations, the size of the RNG_REQ message may also vary.
- TLV Type/Length/Value
- the SS 10 since the SS 10 is not allocated a unique CID when transmitting the RNG_REQ message, i.e., before receiving the RNG_RSP message, it cannot request the BS 20 to allocate uplink bandwidth. If the BS 20 fails to receive the RNG_REQ message from the SS 10 in the allocated UL bandwidth, it cannot determine whether such a failure is due to a packet loss or that the SS 10 did not attempt to transmit the RNG_REQ message. Thus, the SS 10 can transmit the RNG_REQ message only after performing code raging again and being allocated the CDMA_Allocation_IE from the BS 20.
- the document "Enhanced initial ranging and BW request ranging" of IEEE 802.16 BWA working group discloses an initial ranging procedure in an IEEE 802.16e communication system. In the initial ranging procedure, if an Uplink (UL) resource could not be allocated using CDMA_Alloc_IE during a predetermined time after trying a code ranging, a MS retries the code ranging.
- UL Uplink
- a temporary CDMA_Access_ID, allocated to the MSS using the COMA_Allocation_IE is transmitted in order to solve the problem that the MS continuously tries the code ranging in the situation that the resource for transmitting, by a BS, a RNG-REG message to the MSS cannot be used.
- the MS could await to be allocated with the UL resource from the BS without continuously trying the code ranging.
- a bandwidth request ranging procedure in an IEEE 802.16e communication system is disclosed, in particular the BS sends the CDMA_Access_ID using the COMA_Allocation_IE if there is not enough UL resource to assign in response to the bandwidth request of the MSS after terminating the initial ranging, and then allocating UL resource using the CDMA_Access_ID. It is the object of the present invention to provide an efficient network entry process for a subscriber station. This object is solved by the subject-matter of the independent claims. Preferred embodiments are defined in the dependent claims.
- the present invention solves a problem that occurs when an allocated amount of UpLink (UL) resource is insufficient during an attempted ranging.
- UL UpLink
- the present invention can support an efficient network entry process for a Subscriber Station (SS) and solve a problem in an initial network entry process that may occur in the current Institute of Electrical and Electronics Engineers (IEEE) 802.16 and 802.16e standards.
- IEEE Institute of Electrical and Electronics Engineers
- the present invention presents an efficient method for an initial networkentry of a Subscriber Station (SS) as an UpLink (UL) wireless access method supported in a Broadband Wireless Access (BWA) communication system.
- the SS performs UL synchronization and power adjustment through code ranging.
- the SS that succeeds in the code ranging is allocated a bandwidth in which it can transmit a Ranging Request (RNG_REQ) message from a Base Station (BS) and can access the network through message ranging of RNG_REQ/Ranging Response (RNG_RSP).
- RNG_REQ Ranging Request
- RNG_RSP Ranging Request
- the amount of UL resource allocated for the message ranging by the BS to the SS is insufficient, the SS cannot transmit the RNG_REQ message.
- the present invention provides several ways to overcome these problems.
- the present invention can be applied to superhigh-speed wireless Internet networks
- CDMA Code Division Multiple Access
- IE Information Element
- FIG. 3 illustrates information included in a Ranging Request (RNG_REQ) message
- FIG. 4 illustrates information included in a Bandwidth Request message.
- a message type 201, a Downlink channel ID 203, a Requested Downlink Burst Profile 205, and an SS MAC address 207 are necessarily included in the RNG_REQ message, however the other values shown in FIG. 3 may not be included in the RNG_REQ message.
- an SS creates an RNG_REQ message including Type/Length/Value (TLV) fields such as the Requested Downlink Burst Profile 205 and the SS MAC address 207.
- TLV fields such as the Requested Downlink Burst Profile 205, Ranging Anomalies, and Adaptive Antenna System (AAS) broadcast capability are included in the RNG_REQ message.
- a Base Station (BS) considers all possible TLV elements to allocate an UpLink (UL) resource to the SS.
- UL UpLink
- fields such as Serving BS ID, Ranging Purpose Indication, Location update Request, and Paging Controller ID are included in the RNG_REQ message, and fields such as HO ID, Power down Indicator, and Power Saving Class Parameters proposed changes may also be included in the RNG_REQ message.
- the BS allocates the UL resource for all possible TLV elements.
- the BS randomly allocates an UL bandwidth through the CDMA_Allocation_IE.
- the allocated resource may be insufficient for the amount of information of the RNG_REQ message to be transmitted by the SS.
- the SS when the UL resource allocated by the BS for message ranging of the SS is not sufficient, the SS sends a Bandwidth Request including an initial ranging Connection Identifier (CID) to the BS.
- the BS determines the received Bandwidth Request as a Bandwidth Request for ranging and allocates an UL resource to the SS again through the CDMA_Allocation_IE.
- the SS can transmit the RNG_REQ message, receive a Ranging Response (RNG_RSP) message, and successfully perform message ranging.
- RNG_RSP Ranging Response
- the BS allocates a predetermined UL resource that can include at least basic TLV elements to the SS. Simply the BS allocates the UL resource that is sufficient for transmission of basic information of the SS.
- the SS transmits the RNG_REQ message including at least the basic information to the BS. Following which the SS informs the BS of its request for additional transmission of the RNG_REQ message by adding, for example, "Ranging Status Indication” information to the RNG_REQ message to request a bandwidth for additional transmission.
- the "Ranging Status Indication” information may be included in the RNG_REQ message in the form of a TLV field such as "Requested Bandwidth For Next Ranging Request" or a piggyback request.
- the BS Upon receipt of the RNG_REQ message including the minimum information, the BS allocates a basic CID to the SS. The BS also recognizes that there is information to be additionally transmitted for ranging from the piggyback request transmitted from the SS and allocates the UL resource to the SS.
- the BS determines the amount of UL resource according to conditions for allocation of the UL resource and allocates a sufficient amount of UL resource to the SS.
- the conditions may include code set information of a CDMA code and ranging interval information transmitted from the SS.
- FIG. 5 is a flow diagram for illustrating a message flow in ranging between the BS 20 and the SS 10 according to the present invention
- FIG. 6 illustrates information included in a Bandwidth Request message according to the present invention
- FIG. 7 illustrates information included in a CDMA_Allocation_IE message according to the present invention.
- the SS 10 sends a Bandwidth Request including an initial ranging CID to the BS 20.
- the SS 10 transmits an initial ranging code to the BS 20 in a contention-based manner in step 301.
- the BS 20 marks in a RNG_RSP message code ranging information and a power offset adjustment value transmitted from the SS 10 and broadcasts the RNG_RSP message to the SS 10 in step 303. If the BS 20 determines that timing and power adjustment is completed through the code ranging attempted by the SS 10, it marks the status field of the RNG_RSP message as 'success' and sends the RNG_RSP message. If the BS 20 determines that additional code ranging is required, it marks a status field of the RNG_RSP message as 'continue' and sends the RNG_RSP message.
- the SS 10 re-attempts the code ranging in step 305. If the BS 20 determines that timing and power adjustment is completed through the code ranging attempted by the SS 10, it marks the status field of the RNG_RSP message as 'success' and sends the RNG_RSP message in step 307. At the same time, the BS 20 also transmits UL-MAP such as a CDMA_Allocation_IE as shown in FIG. 6 to the SS 10 in step 309.
- the CDMA_Allocation_IE includes the code ranging information transmitted from the SS 10 and the amount of UL resource allocated to the SS 10.
- the SS 10 transmits a Bandwidth Request header as shown in FIG. 6 in an UL bandwidth in step 311.
- the BS 20 transmits UL-MAP such as a CDMA_Allocation_IE the SS 10 in step 311.
- the Bandwidth Request header uses an initial ranging CID in its CID field. That is, the SS 10 transmits the Bandwidth Request header including the initial ranging CID to the BS 20 when the allocated UL resources are insufficient.
- the BS 20 Upon receipt of the Bandwidth Request header including the initial ranging CID, the BS 20 determines the received Bandwidth Request header as a Bandwidth Request for ranging and allocates the UL resource again through the CDMA_Allocation_IE. Since the BS 20 can allocate a sufficient UL resource based on Bandwidth Request information sent from the SS 10, the SS 10 can transmit the RNG REQ message, receive the RNG_RSP message, and successfully perform message ranging.
- the BS 20 marks a ranging code as a predetermined code, e.g., 0x00, in the CDMA_Allocation_IE.
- the BS 20 marks a symbol and a sub-channel receiving the Bandwidth Request header on a ranging symbol and a ranging sub-channel of the CDMA_Allocation_IE.
- the BS 20 since the BS 20 unaware of cannot know the SS 10 requesting a bandwidth, it transmits the CDMA_Allocation_IE in the positions of the ranging symbol and the ranging sub-channel to which the SS 10 transmits the Bandwidth Request header.
- the SS 10 can recognize from the ranging code that the CDMA_Allocation_IE is intended for bandwidth allocation for transmission of the RNG_REQ message.
- the SS 10 can identify the CDMA_Allocation_IE transmitted as a response to the Bandwidth Request header based on the positions of the ranging symbol and the ranging sub-channel.
- the SS 10 receiving the CDMA_Allocation_IE determines that the received CDMA_Allocation_IE is information allocated in response to the Bandwidth Request through the initial ranging CID.
- the SS 10 compares the ranging symbol value and the ranging sub-channel value of the received CDMA_Allocation_IE with the positions of the ranging symbol and the ranging sub-channel to which the SS 10 transmits the Bandwidth Request header.
- the SS 10 transmits its RNG_REQ message in the allocated UL bandwidth in step 317.
- the COMA_Allocation_IE uses the format of a conventional CDMA_Allocation_IE. According to an embodiment of the present invention, the SS 10 determines from the ranging code whether values included in the CDMA_Allocation_IE are used for ranging or bandwidth allocation.
- the ranging process is completed once the SS 10 receives the RNG_RSP message from the BS 20 in step 319.
- the SS 10 then transmits an SS Basic Capability (SBC)_REQ message for capabilities negotiation in step 321.
- SBC SS Basic Capability
- the BS 20 determines the received Bandwidth Request header as a Bandwidth Request for ranging and allocates a UL bandwidth again through the CDMA_Allocation_IE.
- the SS 10 can transmit the RNG_REQ message, receive the RNG_RSP message, and successfully perform message ranging process.
- the Bandwidth Request header may include a CID in any format without being limited to the initial ranging CID.
- FIG. 8 is a schematic flow diagram for illustrating a message flow in raging between the BS 20 and the SS 10 according to the present invention.
- the BS 20 allocates to the SS 10 aUL resource that is larger than the minimum resource that allows transmission of at least necessary TLV information.
- the SS 10 transmits an initial ranging code to the BS 20 in a contention-based manner in step 401.
- the BS 20 marks in the RNG_RSP message code ranging information and a power offset adjustment value transmitted from the SS 10 and broadcasts the RNG RSP message in step 403. If the status field of the received RNG RSP message indicates 'continue', the SS 10 re-attempts code ranging in step 405. If the BS 20 determines that timing and power adjustment is completed through the code ranging attempted by the SS 10, it marks the status field of the RNG_RSP message as 'success' and transmits the RNG_RSP message in step 407.
- the BS 20 transmits to the SS 10 the CDMA_Allocation_IE that is allocated a UL resource that allows transmission of at least basic information.
- the BS 20 transmits to the SS 10 the CDMA_Allocation_IE that is allocated the UL resource that allows loading of the message type 201, the Downlink channel ID 203, the Requested Downlink Burst Profile 205, and the SS MAC address in the RNG_REQ message as shown in FIG. 3 as necessary ranging information.
- the BS 20 allocates the UL resource that is larger than "Minimum Resource For Ranging Request" to the SS 10 that successfully completes code ranging through the CDMA_Allocation_IE.
- the "Minimum Resource For Ranging Request” indicates the amount of UL resources that can support the RNG_REQ message including the minimum information such as a MAC header, a Grant sub-header, and an MAC address of the SS 10.
- the SS 10 transmits the RNG_REQ message including at least the basic information to the BS 20 in step 411.
- the SS 10 marks the presence of the additional RNG_REQ information or a bandwidth allocation request in the RNG_REQ message.
- the SS 10 informs the BS 20 of its request for additional transmission of the RNG_REQ message by adding, for example, "Ranging Status Indication" information to the RNG_REQ message to request a bandwidth for the additional transmission.
- the "Ranging Status Indication” information can be included in the RNG_REQ message in the form of a TLV field such as "Requested Bandwidth For Next Ranging Request” or a piggyback request.
- the marking of the bandwidth allocation request or the marking of the presence of the additional RNG_REQ information may be performed by encapsulating the piggyback request for the bandwidth allocation request in the RNG_REQ message or adding a TLV field for the bandwidth allocation request to the payload of the RNG_REQ message.
- the present invention is not limited to the foregoing example, and the bandwidth allocation request may be marked in the RNG_REQ message using any method that can be implemented by those skilled in the art.
- an RNG_REQ message 430 includes a header 431, a sub-header 433, and a payload 435. Since the UL resources are allocated to load the minimum information in the RNG_REQ message, the SS 10 transmits the RNG-REQ message including the minimum information (e.g., the MAC address) and the piggyback (bandwidth) request to a UL if having additional ranging information to be transmitted in addition to the necessary ranging information.
- the minimum information e.g., the MAC address
- the piggyback (bandwidth) request to a UL if having additional ranging information to be transmitted in addition to the necessary ranging information.
- the piggyback request is intended for bandwidth allocation for additional transmission of information for ranging from the SS 10 to the BS 20.
- the presence of the sub-header can be indicated by a Type field of the header 431 which has a value indicating the presence of the piggyback request as shown in FIG. 10 .
- FIG. 11 illustrates information included in the payload of the RNG_REQ message of FIG. 11 .
- an RNG_REQ message 440 includes a header 441 and a payload 443. If the SS 10 has additional ranging information to be transmitted in addition to the necessary ranging information, it transmits the RNG_REQ message 440 including the minimum information (e.g., MAC address) and a TLV field 450 for the bandwidth allocation request to the UL.
- the minimum information e.g., MAC address
- the TLV field 450 for the bandwidth allocation request may be added to the payload 443 of the RNG_REQ message 440 as shown in FIG. 12 and may be referred to as "Requested Bandwidth For Next Ranging Request".
- the size of the TLV field 450 for the bandwidth allocation request can be appropriately determined by those skilled in the art.
- the BS 20 receiving the RNG_REQ message allocates a basic CID to the SS 10 through the minimum information (e.g., MAC address) of the SS 10 and responds to the RNG_REQ message with the RNG_RSP message.
- the BS 20 determines that there is additional ranging information to be transmitted from MS 10 and allocates the UL resources to the SS 10 using the basic CID in step 415 of FIG. 8 .
- the SS 10 additionally transmits the RNG_REQ message through the basic CID in the allocated UL bandwidth in step 417 of FIG. 8 and receives the RNG_RSP message as a response to the RNG_REQ message from the BS 20 in step 419 of FIG. 8 .
- FIG. 13 is a schematic flow diagram illustrating a message flow in ranging between the BS 20 and the SS 10 according to the present invention
- FIG. 14 illustrates information that can be contained in an RNG_RSP message in initial network entry and information that can be contained in an RNG_RSP message in handoff.
- the BS 20 determines the amount of UL resources according to conditions for allocation of UL resources and allocates the UL resources to the SS 10 according to that determination.
- the SS 10 transmits an initial ranging code to the BS 20 in a contention-based manner in step 501.
- the BS 20 marks in an RNG_RSP message code ranging information and a power offset adjustment value transmitted from the SS 10 and broadcasts the RNG_RSP message in step 503. If the status field of the received RNG_RSP message indicates 'continue', the SS 10 re-attempts code ranging in step 505. If the BS 20 determines that timing and power adjustment is appropriately performed through code ranging, it marks the status field of the RNG_RSP message as 'success' and sends the RNG_RSP message to the SS 10 in step 507.
- the BS 20 determines the amount of UL resource according to conditions for allocation of the UL resource.
- One of the key conditions for determination of the size of the RNG_REQ message is whether the RNG_REQ message is intended for initial network entry or network re-entry resulting from handoff. Determination about this condition can be made by the BS 20 from the ranging code. An initial ranging code set and a handover ranging code set are defined differently and UL contention intervals therefor are allocated differently.
- the BS 20 can determine an entry status of the SS 10 based on the ranging code and interval information transmitted from the SS 10 and determine the amount of UL resource to be allocated to the SS 10.
- the BS 20 determines the amount of UL resource that is sufficient for the SS 10 to transmit all ranging information (all TLV elements) to the BS 20.
- the SS 10 creates the RNG_REQ message including TLV fields such as Requested Downlink Burst Profile and SS MAC Address. Further, TLV fields such as Requested Downlink Burst Profile, Ranging Anomalies, and AAS broadcast capability may be included in the RNG_REQ message (see FIG. 3 ).
- the BS 20 determines the sufficient amount of UL resources based on all possible TLV elements for allocation of the UL resources (UL bandwidth) to the SS 10 and allocates the UL resources to the SS 10 according to the determination.
- the SS 10 may create the RNG_REQ message including fields such as Serving BS ID, Ranging Purpose Indication, Location Update Request, and Paging Controller ID. Further, fields such as HO ID(Hanover Identifier), Power down Indicator, and Power Saving Class Parameters Proposed Changes may be included in the created RNG_REQ message (see FIG. 3 ).
- the BS 20 determines the sufficient amount of UL resources based on all possible TLV elements for allocation of the UL resources (UL bandwidth) to the SS 10 and allocates the UL resources to the SS 10 according to the determination.
- the SS 10 hardly ever experiences the insufficiency of the UL resources for transmission of the RNG_REQ message.
- the BS 20 then allocates to the SS 10 the CDMA_Allocation_IE that is allocated the UL resources in step 511.
- the SS 10 transmits the RNG_REQ message in the allocated UL bandwidth in step 513.
- the SS 10 because of being allocated the sufficient UL resources from the BS 20, the SS 10 does not need to request the BS 20 to allocate a bandwidth for additional transmission of the RNG_REQ message.
- the BS 20 transmits the RNG_RSP message to the SS 10 in step 515, and thus completing the ranging process.
- the SS 10 transmits the SBC_REQ message for capabilities negotiation through the basic CID and the primary CID included in the RNG_RSP message.
- FIG. 15 is a block diagram of the SS 10 according to present invention.
- the SS 10 includes a transceiver 12 and a controller 14.
- the transceiver 12 transceives messages for the ranging process.
- the controller 14 transmits the Bandwidth Request including the initial ranging CID to the BS 20 through the transceiver 12 when the UL resources allocated for transmission of the RNG REQ message are insufficient.
- the controller 14 determines that the received CDMA_Allocation_IE is information allocated in response to the Bandwidth Request through the initial ranging CID.
- the controller 14 compares the ranging symbol value and the ranging sub-channel value of the received CDMA_Allocation_IE with the positions of the ranging symbol and the ranging sub-channel to which the SS 10 transmits the Bandwidth Request header. If the ranging code is 0x00 and the ranging symbol value and the ranging sub-channel value of the received CDMA_Allocation_IE are the same as the position of the ranging symbol and the ranging sub-channel to which the SS 10 transmits the Bandwidth Request header, the controller 14 transmits its RNG_REQ message through the transceiver 12 to the BS 20 in the allocated UL bandwidth.
- the controller 14 transmits the RNG_REQ message including a TLV field such as "Requested Bandwidth For Next Ranging Request" or a piggyback request to the BS 20 through the transceiver 12 to request a bandwidth for additional transmission.
- the marking of the bandwidth allocation request or the marking of the presence of the additional RNG_REQ information may be performed by encapsulating the piggyback request for the bandwidth allocation request in the RNG REQ message or adding a TLV field for the bandwidth allocation request to the payload of the RNG_REQ message.
- the controller 14 If having additional RNG_REQ information to be transmitted to the BS 20, the controller 14 creates the RNG REQ message including the piggyback request or "Requested Bandwidth F Next Ranging Request" for the bandwidth allocation request and transmits the created RNG_REQ message to the BS 20.
- the controller 14 Upon being allocated the basic CID from the BS 20 through the RNG_RSP message, the controller 14 additionally transmits the RNG_REQ message.
- the controller 14 can transmit all ranging information to the BS 20 through single transmission of the RNG_REQ message.
- FIG. 16 is a block diagram of the BS 20 according to present invention.
- the BS 20 includes a transceiver 22, a controller 24, and a UL resource allocator 26.
- the transceiver 24 transceives messages for the ranging process.
- the controller 24 determines the received Bandwidth Request as a Bandwidth Request for ranging.
- the UL resource allocator 26 allocates the UL bandwidth again to the SS 10 through the CDMA_Allocation_IE.
- the controller 24 transmits the CDMA_Allocation_IE in the positions of the ranging symbol and the ranging sub-channel receiving the Bandwidth Request in response to the Bandwidth Request.
- the UL resource allocator 26 allocates the minimum amount of UL resources to the SS 10. In other words, the UL resource allocator 26 allocates the UL resource that is larger than "Minimum Resource For Ranging Request" to the SS 10 that successfully performs coding ranging. At this time, "Minimum Resource For Ranging Request" indicates the amount of UL resources that can support the RNG REQ message including the minimum information such as a MAC header, a Grant sub-header, and an MAC address of the SS 10.
- the controller 24 Upon receiving the RNG REQ message from the SS 10, the controller 24 transmits the RNG_RSP message allocated the basic CID through the minimum information (MAC address) of the SS 10 to the SS 10. The controller 24 also determines whether the presence of additional RNG_REQ information or the bandwidth allocation request is marked in the RNG_REQ message received from the SS 10. For example, the controller 24 determines whether the received RNG REQ message includes the piggyback request or "Requested Bandwidth for next ranging request". If the presence of additional RNG REQ information or the bandwidth allocation request is marked in the received RNG REQ message, the controller 24 controls the UL resource allocator 26 to allocate the UL resources again to the SS 10 through the basic CID.
- the UL resource allocator 26 determines the amount of UL resources according to conditions for allocation of the UL resources and allocates the UL resources to the SS 10 according to the determination.
- one of the key conditions for determination of the size of the RNG_REQ message is whether the RNG_REQ message is intended for initial network entry or network re-entry resulting from handoff.
- the UL resource allocator 26 can allocate the UL resources that are sufficient for the SS 10 to transmit all ranging information to the BS 20.
- the controller 24 transmits the CDMA_Allocation_IE that is allocated the determined amount of UL resources to the SS 10 through the transceiver 22.
- the SS can efficiently perform the ranging process even when the amount of resources allocated during initial ranging is insufficient. If a Subscriber Station (SS) detects the insufficiency of an UpLink (UL) resources for transmission of a Ranging Request (RNG_REQ) message during the ranging process, it transmits a UL resource allocation request message requesting additional allocation of the UL resources to a Base Station (BS) for additional transmission of the RNG_REQ message to cause the BS to additionally allocate the UL resources for the additional transmission of the RNG REQ message.
- BS Base Station
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Description
- The present invention relates generally to a communication system, and in particular, to a system and method for performing a ranging process in a communication system.
- Hereinafter, a description will be made based on an IEEE(Institute of Electrical and Electronics Engineers) 802.16 Orthogonal Frequency Division Multiple Access (OFDMA) system.
-
FIG. 1 is a schematic block diagram illustrating the structure of a general Broadband Wireless Access (BWA) communication system. Referring toFIG. 1 , a Subscriber Station (SS) 10 generally has mobility and is connected to a Backbone Network (BN) 30 through a Base Station (BS) 20. The SS 10 allows connection between theBS 20 and a subscriber. TheBS 20 provides control, management, and connectivity for theSS 10. The BN 30 is connected to an Authentication and Service Authorization (ASA)server 40 for authentication and service authentication of theSS 10. - The SS 10 needs to successfully complete a network entry process with the
BS 20 to communicate on the BWA communication system. The network entry process is divided into downlink channel synchronization, initial ranging, capabilities negotiation, authentication message exchanges, registration, and Internet Protocol (IP) connectivity stages. Upon completion of the network entry process, the SS 10 creates one or more service flows to send data to theBS 20. The initial ranging in the network entry process will be described with reference toFIG. 2 . -
FIG. 2 is a schematic flow diagram for illustrating the initial ranging in the BWA communication system. TheSS 10 begins the initial ranging by sending an initial ranging code to theBS 20 in a contention-based manner instep 101. Such code ranging allows adjustment of UpLink (UL) timing and power offset of theSS 10. TheBS 20 marks in a Ranging Response (RNG_RSP) message code ranging information and a power offset adjustment value transmitted from theSS 10 and broadcasts the RNG_RSP message instep 103. Upon receipt of the RNG_RSP message, theSS 10 checks for the code ranging information and adjusts the power offset. If a status field of the RNG_RSP message indicates 'continue', the SS 10 re-attempts the code ranging instep 105. - If the
BS 20 determines that timing and power adjustment are completed through the code ranging attempted by theSS 10, it marks the status field of the RNG_RSP message as 'success' and sends the RNG_RSP message to theSS 10 instep 107. TheBS 20 allocates a UL bandwidth in which theSS 10 can transmit a Ranging Request (RNG_REQ) message through UL-MAP having a Code Division Multiple Access (CDMA) _Allocation_Information Element (IE). The CDMA_Allocation_IE includes the code ranging information transmitted from theSS 10 and the amount of UL resource allocated to theSS 10. If the status field of the RNG_RSP message indicates 'success', theSS 10 terminates the code ranging and attempts message ranging. - The
SS 10 transmits the RNG_REQ message in the allocated UL bandwidth instep 111. Once the SS 10 receives the RNG_RSP message from theBS 20 instep 113, the ranging is completed. TheSS 10 is allocated a basic Connection IDentifier (CID) and a primary CID through the ranging. These CIDs are uniquely allocated to theSS 10 from theBS 20 and are used to identify theSS 10 during an access to theBS 20. Information such as MAC address information of theSS 10 is transmitted through the RNG_REQ message. TheBS 20 responds to the RNG_REQ message with the RNG_RSP message based on such information Instep 115, the SS 10 sends an SS Basic Capability Request (SBC_REQ) message through the basic CID included in the RNG_RSP message to perform capabilities negotiation. - The RNG_REQ message may include information as a Type/Length/Value (TLV) form. Since information included in a single RNG_REQ message may vary with implementation or situations, the size of the RNG_REQ message may also vary.
- However, since the
SS 10 is not allocated a unique CID when transmitting the RNG_REQ message, i.e., before receiving the RNG_RSP message, it cannot request theBS 20 to allocate uplink bandwidth. If theBS 20 fails to receive the RNG_REQ message from theSS 10 in the allocated UL bandwidth, it cannot determine whether such a failure is due to a packet loss or that theSS 10 did not attempt to transmit the RNG_REQ message. Thus, theSS 10 can transmit the RNG_REQ message only after performing code raging again and being allocated the CDMA_Allocation_IE from theBS 20. In this case, since it is not guaranteed that theBS 20 will allocate a sufficient amount of resource to the SS 10 through the CDMA_Allocation_IE, the RNG_REQ message transmission problem still remains.
The document "Enhanced initial ranging and BW request ranging" of IEEE 802.16 BWA working group, discloses an initial ranging procedure in an IEEE 802.16e communication system. In the initial ranging procedure, if an Uplink (UL) resource could not be allocated using CDMA_Alloc_IE during a predetermined time after trying a code ranging, a MS retries the code ranging. A temporary CDMA_Access_ID, allocated to the MSS using the COMA_Allocation_IE is transmitted in order to solve the problem that the MS continuously tries the code ranging in the situation that the resource for transmitting, by a BS, a RNG-REG message to the MSS cannot be used. By using the CDMA_Access_ID, the MS could await to be allocated with the UL resource from the BS without continuously trying the code ranging. A bandwidth request ranging procedure in an IEEE 802.16e communication system is disclosed, in particular the BS sends the CDMA_Access_ID using the COMA_Allocation_IE if there is not enough UL resource to assign in response to the bandwidth request of the MSS after terminating the initial ranging, and then allocating UL resource using the CDMA_Access_ID.
It is the object of the present invention to provide an efficient network entry process for a subscriber station.
This object is solved by the subject-matter of the independent claims.
Preferred embodiments are defined in the dependent claims. - Therefore, the present invention solves a problem that occurs when an allocated amount of UpLink (UL) resource is insufficient during an attempted ranging.
- The present invention can support an efficient network entry process for a Subscriber Station (SS) and solve a problem in an initial network entry process that may occur in the current Institute of Electrical and Electronics Engineers (IEEE) 802.16 and 802.16e standards.
- The above and other objects, features and advantages of the present invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings in which:
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FIG. 1 is a schematic block diagram illustrating the structure of a general Broadband Wireless Access (BWA) communication system; -
FIG. 2 is a schematic flow diagram for illustrating an initial ranging process for a subscriber station in the BWA communication system;FIG. 3 illustrates information included in a Ranging Request (RNG_REQ) message; -
FIG. 4 illustrates information included in a Bandwidth Request message; -
FIG. 5 is a schematic flow diagram for illustrating a message flow in ranging between a Base Station (BS) and a Subscriber Station (SS) according to a first embodiment of the present invention; -
FIG. 6 illustrates information included in a Bandwidth Request message according to the present invention; -
FIG. 7 illustrates information included in a Code Division Multiplexing Access (CDMA)_Allocation_Information Element (IE) message according to the present invention; -
FIG. 8 is a schematic flow diagram for illustrating a message flow in raging between a BS and an SS according to a second embodiment of the present invention; -
FIG. 9 illustrates the format of an RNG_REQ message according to the present invention; -
FIG. 10 illustrates information included in a Type field of a header of the RNG_REQ message ofFIG. 9 ; -
FIG. 11 illustrates the format of an RNG_REQ message according to modification to the present invention; -
FIG. 12 illustrates information included in a payload of the RNG_REQ message ofFIG. 11 ; -
FIG. 13 is a schematic flow diagram for illustrating a message flow in ranging between a BS and an SS according to a third embodiment of the present invention; -
FIG. 14 illustrates information that can be contained in a Ranging Response (RNG_RSP) message in initial network entry and information that can be contained in the RNG_RSP message in handoff; -
FIG. 15 is a block diagram illustrating an SS according to the present invention; and -
FIG. 16 is a block diagram illustrating a BS according to the present invention. - Preferred embodiments of the present invention will be described herein below with reference to the accompanying drawings. In the drawings, the same or similar elements are denoted by the same reference numerals even though they are depicted in different drawings. In the following description, a detailed description of known functions and configurations incorporated herein has been omitted for conciseness.
- The present invention presents an efficient method for an initial networkentry of a Subscriber Station (SS) as an UpLink (UL) wireless access method supported in a Broadband Wireless Access (BWA) communication system. In the initial network entry, the SS performs UL synchronization and power adjustment through code ranging. The SS that succeeds in the code ranging is allocated a bandwidth in which it can transmit a Ranging Request (RNG_REQ) message from a Base Station (BS) and can access the network through message ranging of RNG_REQ/Ranging Response (RNG_RSP). However, if the amount of UL resource allocated for the message ranging by the BS to the SS is insufficient, the SS cannot transmit the RNG_REQ message. In the current IEEE 802.16 and 802.16e standards, since the BS cannot know the insufficiency of the UL resource allocated to the SS, the SS must re-attempt code ranging. The present invention provides several ways to overcome these problems. The present invention can be applied to superhigh-speed wireless Internet networks
- Although a Code Division Multiple Access(CDMA)Allocation _Information Element (IE) is used in the present invention, it is nevertheless understood that information in any message format indicating an SS is allocated a UL resource for ranging also be used.
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FIG. 3 illustrates information included in a Ranging Request (RNG_REQ) message, andFIG. 4 illustrates information included in a Bandwidth Request message. - Although a
message type 201, a Downlink channel ID 203, a Requested Downlink Burst Profile 205, and anSS MAC address 207 are necessarily included in the RNG_REQ message, however the other values shown inFIG. 3 may not be included in the RNG_REQ message. - Referring to
FIG. 3 , during initial ranging, an SS creates an RNG_REQ message including Type/Length/Value (TLV) fields such as the Requested Downlink Burst Profile 205 and theSS MAC address 207. At this time, TLV fields such as the Requested Downlink Burst Profile 205, Ranging Anomalies, and Adaptive Antenna System (AAS) broadcast capability are included in the RNG_REQ message. A Base Station (BS) considers all possible TLV elements to allocate an UpLink (UL) resource to the SS. - Referring to
FIG. 3 , during handover ranging, fields such as Serving BS ID, Ranging Purpose Indication, Location update Request, and Paging Controller ID are included in the RNG_REQ message, and fields such as HO ID, Power down Indicator, and Power Saving Class Parameters proposed changes may also be included in the RNG_REQ message. The BS allocates the UL resource for all possible TLV elements. - After the SS succeeds in code ranging, the BS randomly allocates an UL bandwidth through the CDMA_Allocation_IE. The allocated resource may be insufficient for the amount of information of the RNG_REQ message to be transmitted by the SS.
- According to a first embodiment of the present invention, when the UL resource allocated by the BS for message ranging of the SS is not sufficient, the SS sends a Bandwidth Request including an initial ranging Connection Identifier (CID) to the BS. In this case, the BS determines the received Bandwidth Request as a Bandwidth Request for ranging and allocates an UL resource to the SS again through the CDMA_Allocation_IE. At this time, since the BS can allocate a sufficient UL resource based on Bandwidth Request information sent from the SS, the SS can transmit the RNG_REQ message, receive a Ranging Response (RNG_RSP) message, and successfully perform message ranging.
- According to a second embodiment of the present invention, in resource allocation to the SS that successfully performs code ranging through the CDMA_Allocation_IE, the BS allocates a predetermined UL resource that can include at least basic TLV elements to the SS. Simply the BS allocates the UL resource that is sufficient for transmission of basic information of the SS.
- When the allocated amount of UL resource is insufficient for transmission of the RNG_REQ message, the SS transmits the RNG_REQ message including at least the basic information to the BS. Following which the SS informs the BS of its request for additional transmission of the RNG_REQ message by adding, for example, "Ranging Status Indication" information to the RNG_REQ message to request a bandwidth for additional transmission. The "Ranging Status Indication" information may be included in the RNG_REQ message in the form of a TLV field such as "Requested Bandwidth For Next Ranging Request" or a piggyback request. Upon receipt of the RNG_REQ message including the minimum information, the BS allocates a basic CID to the SS. The BS also recognizes that there is information to be additionally transmitted for ranging from the piggyback request transmitted from the SS and allocates the UL resource to the SS.
- According to a third embodiment of the present invention, in resource allocation to the SS that successfully performs code ranging through the CDMA_Allocation_IE, the BS determines the amount of UL resource according to conditions for allocation of the UL resource and allocates a sufficient amount of UL resource to the SS. The conditions may include code set information of a CDMA code and ranging interval information transmitted from the SS. Thus, the SS hardly ever experiences the insufficiency of the UL resource for transmission of the RNG_REQ message.
Ranging between aBS 20 and anSS 10 according to the first embodiment of the present invention will be described with reference to the schematic flow diagrams ofFIGs. 5 through 7 . -
FIG. 5 is a flow diagram for illustrating a message flow in ranging between theBS 20 and theSS 10 according to the present invention,FIG. 6 illustrates information included in a Bandwidth Request message according to the present invention, andFIG. 7 illustrates information included in a CDMA_Allocation_IE message according to the present invention. - Referring to
FIG. 5 , if the amount of UL resources allocated by theBS 20 for message ranging of theSS 10 is not sufficient, theSS 10 sends a Bandwidth Request including an initial ranging CID to theBS 20. - More specifically, the
SS 10 transmits an initial ranging code to theBS 20 in a contention-based manner instep 301. TheBS 20 marks in a RNG_RSP message code ranging information and a power offset adjustment value transmitted from theSS 10 and broadcasts the RNG_RSP message to theSS 10 instep 303. If theBS 20 determines that timing and power adjustment is completed through the code ranging attempted by theSS 10, it marks the status field of the RNG_RSP message as 'success' and sends the RNG_RSP message. If theBS 20 determines that additional code ranging is required, it marks a status field of the RNG_RSP message as 'continue' and sends the RNG_RSP message. - If the status field of the RNS_RSP message received in
step 303 indicates 'continue', theSS 10 re-attempts the code ranging instep 305. If theBS 20 determines that timing and power adjustment is completed through the code ranging attempted by theSS 10, it marks the status field of the RNG_RSP message as 'success' and sends the RNG_RSP message instep 307. At the same time, theBS 20 also transmits UL-MAP such as a CDMA_Allocation_IE as shown inFIG. 6 to theSS 10 instep 309. The CDMA_Allocation_IE includes the code ranging information transmitted from theSS 10 and the amount of UL resource allocated to theSS 10. If the allocated UL resource is insufficient when theSS 10 desires to transmit the RNG_REQ message for message ranging, theSS 10 transmits a Bandwidth Request header as shown inFIG. 6 in an UL bandwidth instep 311. And theBS 20 transmits UL-MAP such as a CDMA_Allocation_IE theSS 10 instep 311. Referring toFIG. 6 , the Bandwidth Request header according to the present invention uses an initial ranging CID in its CID field. That is, theSS 10 transmits the Bandwidth Request header including the initial ranging CID to theBS 20 when the allocated UL resources are insufficient. - Upon receipt of the Bandwidth Request header including the initial ranging CID, the
BS 20 determines the received Bandwidth Request header as a Bandwidth Request for ranging and allocates the UL resource again through the CDMA_Allocation_IE. Since theBS 20 can allocate a sufficient UL resource based on Bandwidth Request information sent from theSS 10, theSS 10 can transmit the RNG REQ message, receive the RNG_RSP message, and successfully perform message ranging. - Following which, the
BS 20 marks a ranging code as a predetermined code, e.g., 0x00, in the CDMA_Allocation_IE. TheBS 20 marks a symbol and a sub-channel receiving the Bandwidth Request header on a ranging symbol and a ranging sub-channel of the CDMA_Allocation_IE. In other words, since theBS 20 unaware of cannot know theSS 10 requesting a bandwidth, it transmits the CDMA_Allocation_IE in the positions of the ranging symbol and the ranging sub-channel to which theSS 10 transmits the Bandwidth Request header. Thus, theSS 10 can recognize from the ranging code that the CDMA_Allocation_IE is intended for bandwidth allocation for transmission of the RNG_REQ message. TheSS 10 can identify the CDMA_Allocation_IE transmitted as a response to the Bandwidth Request header based on the positions of the ranging symbol and the ranging sub-channel. - In other words, when the ranging code is 0x00, the
SS 10 receiving the CDMA_Allocation_IE determines that the received CDMA_Allocation_IE is information allocated in response to the Bandwidth Request through the initial ranging CID. TheSS 10 compares the ranging symbol value and the ranging sub-channel value of the received CDMA_Allocation_IE with the positions of the ranging symbol and the ranging sub-channel to which theSS 10 transmits the Bandwidth Request header. If the ranging code is 0x00 and the ranging symbol value and the ranging sub-channel value of the received CDMA_Allocation_IE are the same as the position of the ranging symbol and the ranging sub-channel to which theSS 10 transmits the Bandwidth Request header, theSS 10 transmits its RNG_REQ message in the allocated UL bandwidth instep 317. The COMA_Allocation_IE according to the present invention, shown inFIG. 7 , uses the format of a conventional CDMA_Allocation_IE. According to an embodiment of the present invention, theSS 10 determines from the ranging code whether values included in the CDMA_Allocation_IE are used for ranging or bandwidth allocation. - The ranging process is completed once the
SS 10 receives the RNG_RSP message from theBS 20 instep 319. TheSS 10 then transmits an SS Basic Capability (SBC)_REQ message for capabilities negotiation instep 321. - As such, upon receiving the Bandwidth Request header including the initial ranging CID, the
BS 20 determines the received Bandwidth Request header as a Bandwidth Request for ranging and allocates a UL bandwidth again through the CDMA_Allocation_IE. In this case, since theBS 20 can allocate a sufficient UL resource through Bandwidth Request information transmitted from theSS 10, theSS 10 can transmit the RNG_REQ message, receive the RNG_RSP message, and successfully perform message ranging process. In the present invention, the Bandwidth Request header may include a CID in any format without being limited to the initial ranging CID. - Ranging between the
BS 20 and theSS 10 according to the second embodiment of the present invention will be described with reference toFIGs. 8 through 10 . -
FIG. 8 is a schematic flow diagram for illustrating a message flow in raging between theBS 20 and theSS 10 according to the present invention. Referring toFIG. 8 , in resource allocation to theSS 10 that successfully performs code ranging through the CDMA_Allocation_IE, theBS 20 allocates to theSS 10 aUL resource that is larger than the minimum resource that allows transmission of at least necessary TLV information. - More specifically, the
SS 10 transmits an initial ranging code to theBS 20 in a contention-based manner instep 401. TheBS 20 marks in the RNG_RSP message code ranging information and a power offset adjustment value transmitted from theSS 10 and broadcasts the RNG RSP message instep 403. If the status field of the received RNG RSP message indicates 'continue', theSS 10 re-attempts code ranging instep 405. If theBS 20 determines that timing and power adjustment is completed through the code ranging attempted by theSS 10, it marks the status field of the RNG_RSP message as 'success' and transmits the RNG_RSP message instep 407. - In
step 409, theBS 20 transmits to theSS 10 the CDMA_Allocation_IE that is allocated a UL resource that allows transmission of at least basic information. For example, theBS 20 transmits to theSS 10 the CDMA_Allocation_IE that is allocated the UL resource that allows loading of themessage type 201, the Downlink channel ID 203, the Requested Downlink Burst Profile 205, and the SS MAC address in the RNG_REQ message as shown inFIG. 3 as necessary ranging information. - Simply the
BS 20 allocates the UL resource that is larger than "Minimum Resource For Ranging Request" to theSS 10 that successfully completes code ranging through the CDMA_Allocation_IE. The "Minimum Resource For Ranging Request" indicates the amount of UL resources that can support the RNG_REQ message including the minimum information such as a MAC header, a Grant sub-header, and an MAC address of theSS 10. - The
SS 10 transmits the RNG_REQ message including at least the basic information to theBS 20 instep 411. At this time, if theSS 10 has additional RNG_REQ information to be transmitted to theBS 20, it marks the presence of the additional RNG_REQ information or a bandwidth allocation request in the RNG_REQ message. In other words, if the allocated amount of UL resource is not sufficient for transmission of the RNG_REQ message, theSS 10 informs theBS 20 of its request for additional transmission of the RNG_REQ message by adding, for example, "Ranging Status Indication" information to the RNG_REQ message to request a bandwidth for the additional transmission. The "Ranging Status Indication" information can be included in the RNG_REQ message in the form of a TLV field such as "Requested Bandwidth For Next Ranging Request" or a piggyback request. In other words, the marking of the bandwidth allocation request or the marking of the presence of the additional RNG_REQ information may be performed by encapsulating the piggyback request for the bandwidth allocation request in the RNG_REQ message or adding a TLV field for the bandwidth allocation request to the payload of the RNG_REQ message. However, the present invention is not limited to the foregoing example, and the bandwidth allocation request may be marked in the RNG_REQ message using any method that can be implemented by those skilled in the art. - When the piggyback request for the bandwidth allocation request is added to the RNG_REQ message, the format of the RNG_REQ message is as shown in
FIG. 9 . Referring toFIG. 9 , anRNG_REQ message 430 includes aheader 431, a sub-header 433, and apayload 435. Since the UL resources are allocated to load the minimum information in the RNG_REQ message, theSS 10 transmits the RNG-REQ message including the minimum information (e.g., the MAC address) and the piggyback (bandwidth) request to a UL if having additional ranging information to be transmitted in addition to the necessary ranging information. The piggyback request is intended for bandwidth allocation for additional transmission of information for ranging from theSS 10 to theBS 20. The presence of the sub-header can be indicated by a Type field of theheader 431 which has a value indicating the presence of the piggyback request as shown inFIG. 10 . - When the TLV field for the bandwidth allocation request is added to a payload of the RNG_REQ message, the format of the RNG_REQ message transmitted to the
BS 20 is as shown inFIG. 11. FIG. 12 illustrates information included in the payload of the RNG_REQ message ofFIG. 11 . Referring toFIG. 11 , anRNG_REQ message 440 includes aheader 441 and apayload 443. If theSS 10 has additional ranging information to be transmitted in addition to the necessary ranging information, it transmits theRNG_REQ message 440 including the minimum information (e.g., MAC address) and aTLV field 450 for the bandwidth allocation request to the UL. TheTLV field 450 for the bandwidth allocation request may be added to thepayload 443 of theRNG_REQ message 440 as shown inFIG. 12 and may be referred to as "Requested Bandwidth For Next Ranging Request". The size of theTLV field 450 for the bandwidth allocation request can be appropriately determined by those skilled in the art. - The
BS 20 receiving the RNG_REQ message allocates a basic CID to theSS 10 through the minimum information (e.g., MAC address) of theSS 10 and responds to the RNG_REQ message with the RNG_RSP message. At this time, when theSS 10 transmits the piggyback request or the TLV field for the bandwidth allocation request, theBS 20 determines that there is additional ranging information to be transmitted fromMS 10 and allocates the UL resources to theSS 10 using the basic CID instep 415 ofFIG. 8 . Thus, theSS 10 additionally transmits the RNG_REQ message through the basic CID in the allocated UL bandwidth instep 417 ofFIG. 8 and receives the RNG_RSP message as a response to the RNG_REQ message from theBS 20 instep 419 ofFIG. 8 . - Ranging between the
BS 20 and theSS 10 according to the third embodiment of the present invention will be described with reference toFIGs. 3 ,13 , and14 .FIG. 13 is a schematic flow diagram illustrating a message flow in ranging between theBS 20 and theSS 10 according to the present invention, andFIG. 14 illustrates information that can be contained in an RNG_RSP message in initial network entry and information that can be contained in an RNG_RSP message in handoff. - In resource allocation to the
SS 10 that successfully performs code ranging through a CDMA_Allocation_IE, theBS 20 determines the amount of UL resources according to conditions for allocation of UL resources and allocates the UL resources to theSS 10 according to that determination. - More specifically, the
SS 10 transmits an initial ranging code to theBS 20 in a contention-based manner instep 501. TheBS 20 marks in an RNG_RSP message code ranging information and a power offset adjustment value transmitted from theSS 10 and broadcasts the RNG_RSP message instep 503. If the status field of the received RNG_RSP message indicates 'continue', theSS 10 re-attempts code ranging instep 505. If theBS 20 determines that timing and power adjustment is appropriately performed through code ranging, it marks the status field of the RNG_RSP message as 'success' and sends the RNG_RSP message to theSS 10 instep 507. - The
BS 20 determines the amount of UL resource according to conditions for allocation of the UL resource. One of the key conditions for determination of the size of the RNG_REQ message is whether the RNG_REQ message is intended for initial network entry or network re-entry resulting from handoff. Determination about this condition can be made by theBS 20 from the ranging code. An initial ranging code set and a handover ranging code set are defined differently and UL contention intervals therefor are allocated differently. Thus, theBS 20 can determine an entry status of theSS 10 based on the ranging code and interval information transmitted from theSS 10 and determine the amount of UL resource to be allocated to theSS 10.FIG. 14 illustrates information that can be included in the RNG_RSP message in initial network entry and information that can be included in the RNG RSP message in handoff. According to the conditions, theBS 20 determines the amount of UL resource that is sufficient for theSS 10 to transmit all ranging information (all TLV elements) to theBS 20. - For instance, in initial ranging, the
SS 10 creates the RNG_REQ message including TLV fields such as Requested Downlink Burst Profile and SS MAC Address. Further, TLV fields such as Requested Downlink Burst Profile, Ranging Anomalies, and AAS broadcast capability may be included in the RNG_REQ message (seeFIG. 3 ). In response to the created RNG_REQ message, theBS 20 determines the sufficient amount of UL resources based on all possible TLV elements for allocation of the UL resources (UL bandwidth) to theSS 10 and allocates the UL resources to theSS 10 according to the determination. For example, during handover ranging, theSS 10 may create the RNG_REQ message including fields such as Serving BS ID, Ranging Purpose Indication, Location Update Request, and Paging Controller ID. Further, fields such as HO ID(Hanover Identifier), Power down Indicator, and Power Saving Class Parameters Proposed Changes may be included in the created RNG_REQ message (seeFIG. 3 ). In response to the created RNG_REQ message, theBS 20 determines the sufficient amount of UL resources based on all possible TLV elements for allocation of the UL resources (UL bandwidth) to theSS 10 and allocates the UL resources to theSS 10 according to the determination. - As a result, the
SS 10 hardly ever experiences the insufficiency of the UL resources for transmission of the RNG_REQ message. - The
BS 20 then allocates to theSS 10 the CDMA_Allocation_IE that is allocated the UL resources instep 511. TheSS 10 transmits the RNG_REQ message in the allocated UL bandwidth instep 513. According to the present invention, because of being allocated the sufficient UL resources from theBS 20, theSS 10 does not need to request theBS 20 to allocate a bandwidth for additional transmission of the RNG_REQ message. - The
BS 20 transmits the RNG_RSP message to theSS 10 instep 515, and thus completing the ranging process. Instep 517, theSS 10 transmits the SBC_REQ message for capabilities negotiation through the basic CID and the primary CID included in the RNG_RSP message. - The configurations and operations of the
SS 10 and theBS 20 according to the the present invention will be described below in detail with reference toFIGs. 15 and 16 . -
FIG. 15 is a block diagram of theSS 10 according to present invention. Referring toFIG. 15 , theSS 10 includes atransceiver 12 and acontroller 14. Thetransceiver 12 transceives messages for the ranging process. According to the present invention, thecontroller 14 transmits the Bandwidth Request including the initial ranging CID to theBS 20 through thetransceiver 12 when the UL resources allocated for transmission of the RNG REQ message are insufficient. When the ranging code of the CDMA_Allocation_IE transmitted from theBS 20 is 0x00, thecontroller 14 determines that the received CDMA_Allocation_IE is information allocated in response to the Bandwidth Request through the initial ranging CID. Thecontroller 14 compares the ranging symbol value and the ranging sub-channel value of the received CDMA_Allocation_IE with the positions of the ranging symbol and the ranging sub-channel to which theSS 10 transmits the Bandwidth Request header. If the ranging code is 0x00 and the ranging symbol value and the ranging sub-channel value of the received CDMA_Allocation_IE are the same as the position of the ranging symbol and the ranging sub-channel to which theSS 10 transmits the Bandwidth Request header, thecontroller 14 transmits its RNG_REQ message through thetransceiver 12 to theBS 20 in the allocated UL bandwidth. - According to the present invention, if the allocated amount of UL resources are insufficient for transmission of the RNG REQ message, the
controller 14 transmits the RNG_REQ message including a TLV field such as "Requested Bandwidth For Next Ranging Request" or a piggyback request to theBS 20 through thetransceiver 12 to request a bandwidth for additional transmission. The marking of the bandwidth allocation request or the marking of the presence of the additional RNG_REQ information may be performed by encapsulating the piggyback request for the bandwidth allocation request in the RNG REQ message or adding a TLV field for the bandwidth allocation request to the payload of the RNG_REQ message. If having additional RNG_REQ information to be transmitted to theBS 20, thecontroller 14 creates the RNG REQ message including the piggyback request or "Requested Bandwidth F Next Ranging Request" for the bandwidth allocation request and transmits the created RNG_REQ message to theBS 20. - Upon being allocated the basic CID from the
BS 20 through the RNG_RSP message, thecontroller 14 additionally transmits the RNG_REQ message. - If the initially allocated UL resources are sufficient, the
controller 14 can transmit all ranging information to theBS 20 through single transmission of the RNG_REQ message. -
FIG. 16 is a block diagram of theBS 20 according to present invention. Referring toFIG. 16 , theBS 20 includes atransceiver 22, acontroller 24, and aUL resource allocator 26. Thetransceiver 24 transceives messages for the ranging process. According to the present invention, upon receipt of the Bandwidth Request including the initial ranging CID, thecontroller 24 determines the received Bandwidth Request as a Bandwidth Request for ranging. Thus, theUL resource allocator 26 allocates the UL bandwidth again to theSS 10 through the CDMA_Allocation_IE. At this time, thecontroller 24 transmits the CDMA_Allocation_IE in the positions of the ranging symbol and the ranging sub-channel receiving the Bandwidth Request in response to the Bandwidth Request. - According to the present invention, in resource transmission to the
SS 10 that successfully performs code ranging through the CDMA_Allocation_IE, theUL resource allocator 26 allocates the minimum amount of UL resources to theSS 10. In other words, theUL resource allocator 26 allocates the UL resource that is larger than "Minimum Resource For Ranging Request" to theSS 10 that successfully performs coding ranging. At this time, "Minimum Resource For Ranging Request" indicates the amount of UL resources that can support the RNG REQ message including the minimum information such as a MAC header, a Grant sub-header, and an MAC address of theSS 10. - Upon receiving the RNG REQ message from the
SS 10, thecontroller 24 transmits the RNG_RSP message allocated the basic CID through the minimum information (MAC address) of theSS 10 to theSS 10. Thecontroller 24 also determines whether the presence of additional RNG_REQ information or the bandwidth allocation request is marked in the RNG_REQ message received from theSS 10. For example, thecontroller 24 determines whether the received RNG REQ message includes the piggyback request or "Requested Bandwidth for next ranging request". If the presence of additional RNG REQ information or the bandwidth allocation request is marked in the received RNG REQ message, thecontroller 24 controls theUL resource allocator 26 to allocate the UL resources again to theSS 10 through the basic CID. - According to the present invention, in resource allocation to the
SS 10 that successfully performs coding ranging through the CDMA_Allocation_IE, theUL resource allocator 26 determines the amount of UL resources according to conditions for allocation of the UL resources and allocates the UL resources to theSS 10 according to the determination. As mentioned above, one of the key conditions for determination of the size of the RNG_REQ message is whether the RNG_REQ message is intended for initial network entry or network re-entry resulting from handoff. According to such conditions, theUL resource allocator 26 can allocate the UL resources that are sufficient for theSS 10 to transmit all ranging information to theBS 20. Thecontroller 24 transmits the CDMA_Allocation_IE that is allocated the determined amount of UL resources to theSS 10 through thetransceiver 22. - In the present invention, the SS can efficiently perform the ranging process even when the amount of resources allocated during initial ranging is insufficient. If a Subscriber Station (SS) detects the insufficiency of an UpLink (UL) resources for transmission of a Ranging Request (RNG_REQ) message during the ranging process, it transmits a UL resource allocation request message requesting additional allocation of the UL resources to a Base Station (BS) for additional transmission of the RNG_REQ message to cause the BS to additionally allocate the UL resources for the additional transmission of the RNG REQ message. Thus, it is possible to reduce a delay that may occur in the network entry of the SS.
- While the present invention has been shown and described with reference to preferred embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the scope of the invention. For example, the present invention can be applied to IEEE 802.16/802.16e Orthogonal Frequency Division Multiple Access (OFDMA) systems.
Claims (26)
- A subscriber station (10) adapted to perform a ranging process in a broadband wireless access communication system, the subscriber station (10) comprising:a controller (14) adapted to detect an insufficiency of an uplink, UL, resource being required for transmitting a ranging request, RNG_REQ, message, the RNG_REQ message including minimum information among full information and a bandwidth request used for requesting an allocation of an UL resource to be transmitted; anda transceiver (12) adapted to transmit the RNG_REQ message including the minimum information and the bandwidth request to a base station,wherein the minimum information includes a medium access control, MAC, address.
- The subscriber station (10) of claim 1, wherein the bandwidth request includes a predetermined connection identifier, CID.
- The subscriber station (10) of claim 1, wherein the subscriber station is a subscriber station which succeeds in a code ranging.
- The subscriber station (10) of claim 1, wherein the transceiver is adapted to receive a code division multiple access, CDMA,_allocation_information element, IE, from the base station before the detection, and
wherein the CDMA_allocation_IE includes information on an allocated UL resource by the base station for transmission of the RNG_REQ message including the minimum information and the bandwidth request. - The subscriber station (10) of claim 4, wherein the bandwidth request is included in the RNG_REQ message in the form of a type/length/value, TLV, field or a piggyback request, and includes a predetermined connection identifier, CID.
- The subscriber station (10) of claim 1, wherein the transceiver is adapted to receive a code division multiple access, CDMA, allocation information element, IE, from the base station after transmitting the RNG_REQ message, and
wherein if a ranging code included in the CDMA allocation IE has a predetermined value, the controller (14) is adapted to determine the CDMA allocation IE as information on an allocated UL resource by the base station (20). - The subscriber station (10) of claim 5, wherein the subscriber station is a subscriber station which succeeds in a code ranging.
- A base station (20) adapted to perform a ranging process in a broadband wireless access communication system, the base station (20) comprising:a transceiver (22) adapted to receive a ranging request, RNG_REQ, message including minimum information among full information and a bandwidth request used for requesting an allocation of an uplink, UL, resource from a subscriber station (10); anda controller (24) adapted to allocate the UL resource to the subscriber station (10) if the RNG_REQ message is received,wherein the RNG_REQ message is transmitted by the subscriber station if the subscriber station detects an insufficiency of an UL resource being required for transmitting a RNG_REQ message including the full information, andwherein the minimum information includes a medium access control, MAC, address.
- The base station of claim 8, wherein the bandwidth request includes a predetermined connection identifier, CID.
- The base station (20) of claim 8, wherein the transceiver is adapted to transmit a code division multiple access, CDMA, allocation information element, IE, to the subscriber station before the allocation, and
wherein the CDMA allocation IE includes information on an allocated UL resource by the base station for transmission of the RNG_REQ message including the minimum information and the bandwidth request. - The base station (20) of claim 10, wherein the bandwidth request is included in the RNG_REQ message in the form of a type/length/value, TLV, field or a piggyback request, and includes a predetermined connection identifier, CID.
- The base station (20) of claim 8, wherein the transceiver is adapted to transmit a code division multiple access, CDMA, allocation information element, IE, to the subscriber station after allocating the UL resource; and the controller (24) is adapted to mark a ranging code included in the CDMA allocation IE as a predetermined value in order to indicate the CDMA allocation IE is information on an allocated UL resource by the base station for the additional transmission of the RNG_REQ message.
- A method for performing a ranging process of a subscriber station, SS, in a broadband wireless access communication system, the method comprising the steps of: detecting, by the SS an insufficiency of an uplink, UL, resource being required for transmitting a ranging request, RNG_REQ, message including full information; and transmitting, by the SS, the RNG_REQ message including minimum information among the full information and a bandwidth request used for requesting an allocation for an UL resource;
wherein the minimum information includes a medium access control, MAC, address. - The method of claim 13, wherein the bandwidth request includes a predetermined connection identifier, CID.
- The method of claim 13, wherein the subscriber station is a subscriber station which succeeds in a code ranging.
- The method of claim 13, further comprising:receiving a code division multiple access, CDMA,_allocation information element, IE, from the base station before the detection,wherein the CDMA_allocation_IE includes information on an allocated UL resource by the base station for transmission of the RNG_REQ message including the minimum information and the bandwidth request.
- The method of claim 16, wherein bandwidth request is included in the RNG_REQ message in the form of a type/length/value, TLV field or a piggyback request, and includes a predetermined connection identifier, CID.
- The method of claim 13, further comprising:receiving a code division multiple access, CDMA allocation information Element, IE, from the base station after transmitting the RNG_REQ message; andif a ranging code included in the CDMA allocation IE has a predetermined value, determining the CDMA allocation IE to be information on an allocated UL resources by the base station for the additional transmission of the RNG_REQ message.
- The method of claim 17, wherein the subscriber station is a subscriber station which succeeds in a code ranging.
- A method for performing a ranging process of a base station in a broadband wireless access communication system, the method comprising the steps of:receiving from a subscriber station, a ranging request, RNG_REQ, message including minimum information among full information and a bandwidth request used for requesting an allocation of an uplink, UL, resource; andallocating the UL resource to the subscriber station,wherein the RNG_REQ message is transmitted by the subscriber station if the subscriber station detects an insufficiency of an UL resource being required for transmitting a RNG_REQ message including the full information, andwherein the minimum information includes a medium access control, MAC, address.
- The method of claim 20, wherein the bandwidth request includes a predetermined connection identifier, CID.
- The method of claim 20, wherein the subscriber station is a subscriber station which succeeds in a code ranging.
- The method of claim 20 further comprising:transmitting a code division multiple access, CDMA, allocation information element, IE, to the subscriber station before the allocation,wherein the CDMA allocation IE includes information on an allocated UL resource by the base station for transmission of the RNG_REQ message including the minimum information and the bandwidth request
- The method of claim 23, wherein the bandwidth request is included in the RNG_REQ message in the form of a type/length/value, TLV, field or a piggyback request, and includes a predetermined connection identifier, CID.
- The method of claim 20, further comprising:transmitting a code division multiple access, CDMA,_allocation_information element, IE, to the subscriber station after allocating the UL resource; andmarking a ranging code included in the COMA_Allocation_IE as a predetermined value in order to indicate the CDMA allocation IE is information on an allocated UL resources by the base station the RNG_REQ message.
- The method of claim 24, wherein the subscriber station is a subscriber station which succeeds in a code ranging.
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KR20050019853A KR101009788B1 (en) | 2005-03-09 | 2005-03-09 | System and method for performing ranging procedure in communication system |
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EP1701461B1 true EP1701461B1 (en) | 2018-09-19 |
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EP06004763.6A Ceased EP1701461B1 (en) | 2005-03-09 | 2006-03-08 | System and method for performing ranging process in a communication system |
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CN (1) | CN100548064C (en) |
Families Citing this family (72)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR100871339B1 (en) * | 2005-04-21 | 2008-12-01 | 삼성전자주식회사 | Band Request Device and Method in Broadband Wireless Communication System |
KR20070036004A (en) * | 2005-09-28 | 2007-04-02 | 한국전자통신연구원 | Ranging Method using Bandwidth Request Code |
WO2007037633A1 (en) * | 2005-09-28 | 2007-04-05 | Samsung Electronics Co., Ltd. | Method for ranging with bandwidth request code |
EP3445121B1 (en) * | 2006-02-03 | 2020-04-08 | Guangdong Oppo Mobile Telecommunications Corp., Ltd. | Uplink resource allocation in a mobile communication system |
US20070258407A1 (en) * | 2006-05-05 | 2007-11-08 | Zexian Li | Handover optimization in a wireless network |
WO2007133034A2 (en) * | 2006-05-13 | 2007-11-22 | Lg Electronics Inc. | Method of performing procedures for initial network entry and handover in a broadband wireless access system |
KR100874002B1 (en) * | 2006-06-14 | 2008-12-17 | 한국전자통신연구원 | Method for requesting uplink synchronization in mobile communication system, corresponding CDA allocation information element structure and device accordingly |
JP4745145B2 (en) * | 2006-06-20 | 2011-08-10 | 富士通株式会社 | Communications system |
WO2008004845A1 (en) | 2006-07-07 | 2008-01-10 | Samsung Electronics Co., Ltd. | Apparatus and method for reducing volume of resource allocation information message in a broadband wireless communication system |
KR100941052B1 (en) | 2006-07-07 | 2010-02-05 | 삼성전자주식회사 | Apparatus and method for reducing the amount of resource allocation information message in a broadband wireless communication system |
US8259688B2 (en) * | 2006-09-01 | 2012-09-04 | Wi-Lan Inc. | Pre-allocated random access identifiers |
JP4492966B2 (en) * | 2006-10-24 | 2010-06-30 | 株式会社Kddi研究所 | Connection identifier assigning method, program, relay station and base station via relay station in IEEE 802.16 |
JP4983208B2 (en) * | 2006-11-07 | 2012-07-25 | 富士通株式会社 | Relay station, wireless communication method |
KR100857904B1 (en) * | 2006-12-04 | 2008-09-10 | 한국전자통신연구원 | Uplink fast ranging processing apparatus and method for mobile communication system |
US8290447B2 (en) | 2007-01-19 | 2012-10-16 | Wi-Lan Inc. | Wireless transceiver with reduced transmit emissions |
US8825065B2 (en) * | 2007-01-19 | 2014-09-02 | Wi-Lan, Inc. | Transmit power dependent reduced emissions from a wireless transceiver |
JP4880496B2 (en) * | 2007-02-23 | 2012-02-22 | 京セラ株式会社 | Wireless communication system, wireless communication terminal, wireless base station, and wireless communication method |
KR20080079961A (en) * | 2007-02-28 | 2008-09-02 | 엘지전자 주식회사 | Ranging Method in Broadband Wireless Access Systems |
JP4687915B2 (en) * | 2007-05-21 | 2011-05-25 | 日本電気株式会社 | Wireless communication system, terminal station, wireless base station, and communication permission method |
KR101015739B1 (en) * | 2007-06-05 | 2011-02-22 | 고려대학교 산학협력단 | Handover System and Method in Wireless Mobile Communication System |
JP4893832B2 (en) * | 2007-08-31 | 2012-03-07 | 富士通株式会社 | Message exchange method, radio communication system, radio terminal apparatus, and radio base station apparatus |
KR101406458B1 (en) * | 2007-08-31 | 2014-06-13 | 삼성전자주식회사 | System and method for bandwidth allocation request and bandwidth allocation in a communication system |
KR101447288B1 (en) * | 2007-09-12 | 2014-10-07 | 삼성전자주식회사 | Methods for requesting bandwidth allocation and detecting service flow in a communication system |
JP4702353B2 (en) * | 2007-11-28 | 2011-06-15 | 住友電気工業株式会社 | Base station apparatus and ranging method |
KR100922738B1 (en) * | 2007-11-30 | 2009-10-22 | 한국전자통신연구원 | Ranging method in mobile communication system and relay station for the method |
RU2481748C2 (en) * | 2007-12-17 | 2013-05-10 | Телефонактиеболагет Л М Эрикссон (Пабл) | Ranging procedure identification of enhanced wireless terminal |
US20090154401A1 (en) * | 2007-12-18 | 2009-06-18 | Motorola, Inc. | Methods and systems for initial ranging |
CN101198181B (en) * | 2007-12-24 | 2010-10-06 | 中国科学院计算技术研究所 | Network processing system for wireless network and method thereof |
CN101483913B (en) * | 2008-01-09 | 2012-06-06 | 中兴通讯股份有限公司 | Method for implementing base station access by terminal, terminal and base station for implementing the method |
BRPI0909301A2 (en) * | 2008-03-10 | 2017-09-19 | Nortel Networks Ltd | METHODS FOR CONTROL SIGNALING FOR WIRELESS SYSTEMS |
CN101547395B (en) * | 2008-03-25 | 2011-02-23 | 中兴通讯股份有限公司 | Method for sharding management messages on distance measuring connection |
US20100111029A1 (en) * | 2008-05-05 | 2010-05-06 | Mediatek Inc. | Fast feedback contention-based data transmission in wireless communications systems |
US8369241B2 (en) * | 2008-05-05 | 2013-02-05 | Mediatek Inc. | Fast feedback contention-based ranging procedure in wireless communications systems |
GB0809402D0 (en) * | 2008-05-23 | 2008-07-02 | Nec Corp | Microwave radio communications device and related method of operation and network arrangement |
MY164275A (en) * | 2008-07-01 | 2017-11-30 | Samsung Electronics Co Ltd | Apparatus and method for performing handover in wireless communication system |
US10165501B2 (en) | 2008-07-07 | 2018-12-25 | Apple Inc. | Medium access control for wireless systems |
KR20100008326A (en) | 2008-07-15 | 2010-01-25 | 엘지전자 주식회사 | Method of supporting location privacy |
EP2157829B1 (en) * | 2008-08-22 | 2016-08-03 | Fujitsu Limited | Methods and Apparatus for Operating a Wireless Communications System |
KR101036482B1 (en) | 2009-02-03 | 2011-05-24 | 엘지전자 주식회사 | Random access method in wireless communication system |
US8310921B2 (en) | 2008-09-04 | 2012-11-13 | Lg Electronics Inc. | Method of random access in a wireless system |
KR20100089728A (en) | 2009-02-03 | 2010-08-12 | 엘지전자 주식회사 | Method of transmitting and receiving an acknowledgement in a wireless system |
WO2010030127A2 (en) * | 2008-09-10 | 2010-03-18 | Lg Electronics Inc. | Method for selectively encrypting control signal |
US8532681B2 (en) * | 2008-10-20 | 2013-09-10 | Qualcomm Incorporated | Methods and apparatus for implementing short message systems (SMS) in WiMAX systems |
US8245029B2 (en) * | 2008-10-31 | 2012-08-14 | Fujitsu Limited | System and method for enhanced network entrance into a wireless network |
US20100111012A1 (en) * | 2008-11-06 | 2010-05-06 | Qualcomm Incorporated | Methods and systems for fast network entry and re-entry in multiple access networks |
KR101609878B1 (en) | 2008-11-10 | 2016-04-21 | 엘지전자 주식회사 | Method and apparatus for communication using multiple carrier |
KR101529641B1 (en) * | 2008-11-28 | 2015-06-17 | 삼성전자주식회사 | Method for resumming services in a wireless communication system |
US8179813B2 (en) * | 2008-12-18 | 2012-05-15 | Qualcomm Incorporated | Methods and systems for ranging using ranging loading factor |
KR101588745B1 (en) | 2009-02-26 | 2016-02-12 | 엘지전자 주식회사 | Method of Ranging considering status of a Mobile Station in a Broadband Wireless Access System |
KR101717519B1 (en) * | 2009-04-07 | 2017-03-17 | 엘지전자 주식회사 | Method of network entry in wireless communication system |
WO2010117206A2 (en) | 2009-04-07 | 2010-10-14 | 엘지전자 주식회사 | Method for allocating resources in a broadband wireless access system |
US8873476B2 (en) * | 2009-04-07 | 2014-10-28 | Lg Electronics Inc. | Method for network entry in a wireless communication system |
KR101638899B1 (en) * | 2009-04-08 | 2016-07-12 | 엘지전자 주식회사 | Method of transmitting and receiving an acknowledgement in a wireless system |
KR20100116512A (en) | 2009-04-22 | 2010-11-01 | 엘지전자 주식회사 | Method of transmitting and receiving an acknowledgement in a wireless system |
US8259663B2 (en) * | 2009-05-01 | 2012-09-04 | Qualcomm Incorporated | Methods and systems using efficient ranging message transmission during initial ranging |
US8189525B2 (en) * | 2009-06-19 | 2012-05-29 | Clearwire Ip Holdings Llc | Solution for INE/HO LB bottle neck |
US8175051B2 (en) * | 2009-05-29 | 2012-05-08 | Clearwire Ip Holdings Llc | Hybrid scheme for DL link adaptation |
US8619695B2 (en) | 2009-07-03 | 2013-12-31 | Lg Electronics Inc. | Ranging of terminal in legacy support mode |
RU2546611C2 (en) * | 2009-07-06 | 2015-04-10 | Эппл Инк | Method of controlling access in wireless communication system |
US8493904B2 (en) * | 2009-09-22 | 2013-07-23 | Samsung Electronics Co., Ltd. | Method and apparatus for supporting short messaging service of mobile station during idle mode in wireless communication system |
KR101660740B1 (en) * | 2009-10-14 | 2016-10-10 | 엘지전자 주식회사 | Method of performing HandOver in a Broadband Wireless Access system |
KR101673187B1 (en) * | 2009-10-30 | 2016-11-08 | 삼성전자주식회사 | Apparatus and method for requesting uplink resourece for transmission of rng-req in a communication system |
US9215573B2 (en) * | 2009-12-02 | 2015-12-15 | Lg Electronics Inc. | Method for transmitting short messages in a broadband wireless access system |
JP5677460B2 (en) * | 2009-12-21 | 2015-02-25 | エルジー エレクトロニクス インコーポレイティド | Method for performing handover through area change in broadband wireless access system |
KR101674007B1 (en) * | 2010-05-26 | 2016-11-09 | 삼성전자주식회사 | Ranging method and apparatus for allocating uplink resource in broadband wireless communication system |
US8897219B2 (en) | 2010-08-13 | 2014-11-25 | Lg Electronics Inc. | Method and user equipment for transmitting ranging signal, and method and base station for receiving ranging signal |
US9510312B2 (en) * | 2010-10-21 | 2016-11-29 | Lg Electronics Inc. | Method and apparatus for performing network entry/reentry in wireless communication system |
KR101381470B1 (en) * | 2010-12-07 | 2014-04-17 | 엘지전자 주식회사 | Method for operation in idle mode for m2m communication, and device using same |
US9107226B2 (en) * | 2011-03-10 | 2015-08-11 | Futurewei Technologies, Inc. | Method and system for handling congestion in a communications system |
JP2013005430A (en) * | 2011-06-15 | 2013-01-07 | Lg Electronics Inc | Data transmission method and device in radio communication system |
KR101617557B1 (en) * | 2011-09-12 | 2016-05-02 | 인텔 코포레이션 | Group media access control message for machine-to-machine devices and method to update a group identifier |
KR102437642B1 (en) * | 2017-08-18 | 2022-08-30 | 삼성전자주식회사 | Apparatus and method for scheduling uplink transmission in wireless communication system |
Family Cites Families (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR100566201B1 (en) | 2002-04-22 | 2006-03-29 | 삼성전자주식회사 | Ranging Method in Mobile Communication System using Orthogonal Frequency Division Multiple Access |
WO2005040960A2 (en) | 2003-10-29 | 2005-05-06 | Electronics And Telecommunications Research Institute | Method for preamble-based bandwidth request in wireless portable internet system |
KR20050120306A (en) * | 2004-06-18 | 2005-12-22 | 삼성전자주식회사 | Wireless access communication system for retransmitting data and apparatus and methode of retransmitting data |
KR20050121892A (en) * | 2004-06-23 | 2005-12-28 | 삼성전자주식회사 | Apparatus and method for allocation uplink channel in mobile communication system |
CN101091356B (en) * | 2004-11-03 | 2012-10-10 | 三星电子株式会社 | System and method for provisioning service flows in broadband wireless access communication |
KR20060097496A (en) * | 2005-03-09 | 2006-09-14 | 삼성전자주식회사 | Wireless access communication system for performing ranging procedure, terminal and base station for same, and method thereof |
KR100943578B1 (en) * | 2006-03-31 | 2010-02-23 | 삼성전자주식회사 | Handover method and apparatus in communication system |
EP1876846B1 (en) * | 2006-07-03 | 2009-09-09 | Samsung Electronics Co., Ltd. | System and method for performing periodic ranging in sleep mode in a communication system |
-
2005
- 2005-03-09 KR KR20050019853A patent/KR101009788B1/en not_active IP Right Cessation
-
2006
- 2006-03-08 EP EP06004763.6A patent/EP1701461B1/en not_active Ceased
- 2006-03-08 US US11/370,289 patent/US7620020B2/en active Active
- 2006-03-09 CN CNB200610089859XA patent/CN100548064C/en not_active Expired - Fee Related
- 2006-03-09 JP JP2006064878A patent/JP4515402B2/en not_active Expired - Fee Related
Non-Patent Citations (1)
Title |
---|
None * |
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JP4515402B2 (en) | 2010-07-28 |
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EP1701461A1 (en) | 2006-09-13 |
CN100548064C (en) | 2009-10-07 |
KR20060097495A (en) | 2006-09-14 |
CN1882159A (en) | 2006-12-20 |
KR101009788B1 (en) | 2011-01-19 |
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